简介概要

Synthesis and characterization of Ca0.9Mg0.1TiO3:Pr3+,Ag+ phosphor

来源期刊:JOURNAL OF RARE EARTHS2018年第2期

论文作者:Rui Chen Donghua Chen

文章页码:125 - 129

摘    要:Ca0.9Mg0.1TiO3:Pr3+,Ag+ phosphors were synthesized by solid-state reaction technique. The crystalline phase and luminescence performances of Ca0.9Mg0.1TiO3:Pr3+,Ag+ were observed by X-ray powder diffractometer(XRD), transmission electron microscope(TEM), photoluminescence spectrometer and brightness meter, respectively. The addition of Ag+ can diminish in the crystal particle sizes of Ca0.9Mg0.1TiO3:Pr3+. Because Ag+ can reduce the concentration of the undesirable defects in the phosphor, luminescence intensity of Ca0.9Mg0.1TiO3:Pr3+,Ag+ is 2.3 times as high as that of Ca0.9Mg0.1TiO3:Pr3+at the same preparation condition. The effect of Ag+ on the persistent afterglow properties is to deepen the energy storage traps and enhance the energy transfer efficiency from Ca0.9Mg0.1TiO3 to Pr3+. The persistent afterglow properties of Ca0.9Mg0.1TiO3:Pr3+,Ag+ are better than those of Ca0.9Mg0.1TiO3:Pr3+ at the same preparation condition. In conclusion,Ca0.9Mg0.1TiO3:Pr3+,Ag+ phosphor with molar ratio of Ag+to Pr3+ 3:1 obtained at 900 ℃ for 4 h exhibits the optimal photoluminescence performances.

详情信息展示

Synthesis and characterization of Ca0.9Mg0.1TiO3:Pr3+,Ag+ phosphor

Rui Chen1,Donghua Chen2

1. College of Chemistry and Chemical Engineering,Yunnan Normal University2. Hubei Key Laboratory for Catalysis and Material Scince,College of Chemistry and Material Science,South Central University for Nationalities

摘 要:Ca0.9Mg0.1TiO3:Pr3+,Ag+ phosphors were synthesized by solid-state reaction technique. The crystalline phase and luminescence performances of Ca0.9Mg0.1TiO3:Pr3+,Ag+ were observed by X-ray powder diffractometer(XRD), transmission electron microscope(TEM), photoluminescence spectrometer and brightness meter, respectively. The addition of Ag+ can diminish in the crystal particle sizes of Ca0.9Mg0.1TiO3:Pr3+. Because Ag+ can reduce the concentration of the undesirable defects in the phosphor, luminescence intensity of Ca0.9Mg0.1TiO3:Pr3+,Ag+ is 2.3 times as high as that of Ca0.9Mg0.1TiO3:Pr3+at the same preparation condition. The effect of Ag+ on the persistent afterglow properties is to deepen the energy storage traps and enhance the energy transfer efficiency from Ca0.9Mg0.1TiO3 to Pr3+. The persistent afterglow properties of Ca0.9Mg0.1TiO3:Pr3+,Ag+ are better than those of Ca0.9Mg0.1TiO3:Pr3+ at the same preparation condition. In conclusion,Ca0.9Mg0.1TiO3:Pr3+,Ag+ phosphor with molar ratio of Ag+to Pr3+ 3:1 obtained at 900 ℃ for 4 h exhibits the optimal photoluminescence performances.

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